Аннотация:
Ceria-based solid solutions have been proposed as catalytic supports for the conversion of methane to syngas. Control of oxygen vacancies in vacancy-rich oxides represents a promising way to stable catalysts with improved activity.
Ключевые слова:
ceria, solid solution, support, partial oxidation of methane, dry reforming of methane, syngas.
Образец цитирования:
I. V. Zagaynov, A. S. Loktev, I. E. Mukhin, A. A. Konovalov, A. G. Dedov, “Effect of the oxidizing capacity of ceria-based support on the conversion of methane to syngas”, Mendeleev Commun., 32:1 (2022), 129–131
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc594
https://www.mathnet.ru/rus/mendc/v32/i1/p129
Эта публикация цитируется в следующих 5 статьяx:
A. L. Kustov, T. R. Aymaletdinov, A. A. Shesterkina, K. B. Kalmykov, P. V. Pribytkov, I. V. Mishin, S. F. Dunaev, L. M. Kustov, “Methane dry reforming: influence of the SiO2 and Al2O3 supports on the catalytic properties of Ni catalysts”, Mendeleev Commun., 34:2 (2024), 221–223
I. V. Zagaynov, A. S. Loktev, A. A. Konovalov, A. A. Klimashin, O. S. Antonova, A. G. Dedov, “NiCo-Gd0.1Ti0.1Zr0.1Ce0.7O2 catalyst for dry reforming and partial oxidation of methane: effect of NiCo applying method on the conversion of methane to synthesis gas”, Mendeleev Commun., 34:4 (2024), 572–575
Igor V. Zagaynov, Aleksey K. Buryak, “Ceria-based ceramics surface investigation”, Ceramics International, 49:23 (2023), 39729
L. B. Gulina, P. O. Skripnyak, V. P. Tolstoy, “Synthesis of ceria nanosheets on the surface of Ce(NO3)3 solution by interaction with gaseous ammonia”, Mendeleev Commun., 33:1 (2023), 124–126
N. I. Matskevich, V. N. Shlegel, A. N. Semerikova, V. D. Grigorieva, I. V. Korolkov, E. N. Tkachev, “Crystal growth and thermodynamic properties of lithium tungstate doped by 4”, Mendeleev Commun., 32:6 (2022), 834–836